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Methods for Characterizing the 3-D Morphology of Polymer Composites

机译:用于表征聚合物复合材料3-D形态的方法

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3-dimensional visualization of polymer morphology is of increasing interest in the polymer community because it provides a deeper insight into the arrangement of the phases in heterophasic polymeric materials, for example in composites. Depending on the size of the fillers, an adequate method offering a good compromise between suitable resolution and observable volume must be selected. Different polypropylene composites filled with long glass fibres, mica and talcum particles were investigated. Four methods were applied to account for the different filler sizes. For composites containing fillers larger than several micrometers, i.e. glass fibres and mica particles, X-ray tomography offers a very good combination of visibility and volume. Serial sectioning by polishing in combination with light optical microscopy can be an alternative if no X-ray equipment is available. This combined method has the disadvantage, however, that the imaged volume is smaller and involves more effort, which makes it unsuitable for routine observations. The much smaller talcum particles with thicknesses down to 200 nm were investigated by coupling focused ion beam (FIB) milling and scanning electron microscopy (SEM) and by insitu ultramicrotomy in the SEM. Both methods led to good and comparable results.
机译:聚合物形态的3维可视化是在复合材料中的聚合物社区越来越大的兴趣,因为它提供了一个更深入地了解在多相聚合物材料的相的结构,例如。根据填充物的大小,提供合适的分辨率和可观察量之间的良好折衷的适当方法必须被选中。填充有长玻璃纤维,云母和滑石颗粒不同聚丙烯复合材料进行了研究。四种方法分别适用于账户不同的填充物的尺寸。对于包含填料的比几微米更大,即玻璃纤维和云母粒子,X射线断层摄影术提供了一个非常良好的可见度和体积的组合的复合材料。通过结合光学显微镜抛光连续切片可替代如果没有X光设备是可用的。该组合方法的缺点,但是,在成像的体积更小,并涉及更多的努力,这使得它不适合于常规的观测。与厚度降低到200 nm处的更小的滑石粉颗粒通过耦合聚焦离子束(FIB)铣削和扫描电子显微镜(SEM)和通过在SEM原位超薄切片调查。导致良好的和比较的结果,这两种方法。

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